Modelling approach for multi-criteria decision-making selection process for artificial lift systems in crude oil production

Oriolson Rodriguez, Javier Duran-Serrano, César Garcia-Chinchilla, Edgar Castillo
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引用次数: 3

Abstract

Artificial Lift system selection is a key factor in enhancing energy efficiency, increasing profit and expanding asset life in any oilproducing well. Theoretically, this selection has to consider an extensive number of variables, making hard to select the optimal Artificial Lift System. However, in practice, a limited number of variables and empirical knowledge are used in this selection process. The latter increases system failure probability due to pump – well incompatibility. The multi-criteria decision-making methods present mathematical modelling for selection processes with finite alternatives and high number of criteria. These methodologies make it feasible to reach a final decision considering all variables involved.In this paper, we present a software application based on a sequential mathematical analysis of hierarchies for variables, a numerical validation of input data and, finally, an implementation of Multi-Criteria Decision Making (MCDM) methods (SAW, ELECTRE and VIKOR) to select the most adequate artificial lift system for crude oil production in Colombia. Its novel algorithm is designed to rank seven Artificial Lift Systems, considering diverse variables in order to make the decision. The results are validated with field data in a Casestudy relating to a Colombian oilfield, with the aim of reducing the Artificial Lift Failure Rate.
原油人工举升系统多准则决策选择建模方法
对于任何一口油井来说,人工举升系统的选择是提高能源效率、增加利润和延长资产寿命的关键因素。从理论上讲,这种选择必须考虑大量的变量,这使得选择最优的人工举升系统变得困难。然而,在实践中,在这个选择过程中使用的变量和经验知识数量有限。后者由于泵井不相容而增加了系统故障的概率。多准则决策方法为具有有限备选项和大量准则的选择过程提供了数学模型。这些方法使得在考虑所有变量的情况下做出最终决定成为可能。在本文中,我们提出了一个基于变量层次顺序数学分析的软件应用程序,输入数据的数值验证,最后实现多标准决策(MCDM)方法(SAW, ELECTRE和VIKOR),以选择最适合哥伦比亚原油生产的人工举升系统。它的新算法被设计为对七个人工举升系统进行排名,考虑不同的变量来做出决定。为了降低人工举升故障率,在与哥伦比亚油田相关的案例研究中,对结果进行了验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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